Figure P4.17 160 V 10 Ω m 30 Ω Α i, €100 Ω 20 Ω Μ 150 i
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- Use Kirchhoff's Law to solve for the current passing through each resistor. Compare it with what you got from the PHET Simulation A D 392 www 6V E www F 192 www 292 352 www 9V B Cthe adjoining figure. This lamp can withstand a maximum voltage 3.0 v 0.4 9. Volt-ampere (V-I) charaeteristics of an incandescent lamp 16thd in and a maximum current 0.4 A. An infinite ladder network consisting a large number of these lamps is also shown in the figure given belo How much maximum voltage can be applied between the terminals A and B, so that no lamp gets damaged? (Use V5 = 2.2). Ans:x4.2V Hint: Curentin all bulls except first isFrom Figure 1 above find Rth (BC) a. 4.24 b. 8.55O c. 6.86O d. 5.56ZOV O - In. Classroom docs.google.com a move a charge 20C, then the voltage *:produced is 300V 30V 0.03V 3V In figure below, The total voltage of the .3 * sources connected in series is 2 V 2 V 4 V 8 V +12v -6v Ov +14y In engineering notation, 0.00076V can .4 H he written ar O O5. a. State Kirchhoff's voltage law. b. Determine the unknown voltage drop V3, in the figure given. c. Determine V3, if the polarity of Vs2 is reversed. VS2 15 V + 12 V WWW ww wwwQ4(a) Find the branch currents /,, through Is in the circuit shown in Figure Q4 (a), by using Kirchhoff's current law (KCL). Also determine the number of nodes in the circuit shown in Figure Q4 (a). 50 A 12 15 10A 100 A 20A 20 A Figure Q4 (a)Problem 4.50 Enhanced with Hints and Feedback Use the mesh-current method to find the branch currents ia-te for the circuit shown in (Figure 1). Suppose that - 340 V. Figure 6100 25 (1 100 434 4500 1000 Part A Determine the current fa Express your answer to three significant figures and include the appropriate units. ▸ View Available Hint(s) Submit Part B Submit Value Part C Determine the current is Express your answer to three significant figures and include the appropriate units. View Available Hint(s) 4 Value Units Units ? Determine the current ie Express your answer to three significant figures and include the appropriate units. View Available Hint(s) 7Find the Power Dissipated in the load resistance R5 (Power of R5) by using the Mesh Current Method. Student numbers from 180207003 up to 180207037 (including) 1=4A Student numbers from 180207039 up to 190207076 (including) 11=1A V1=10 V V1=4 V V1 R2 R4 out1 out2 R3 4. 11 R1 R5 10 B1 1 V=5*V(out1)An ac resistance is higher than a dc resistance. True False4 decimals Four resistors, R1 = 100 ohms, R2 = 250 ohms, R3 = 350 ohms, and R4 = 200 ohms are connected such that the parallel combination of R1 and R2 is connected in series with the parallel combination of R3 and R4. The series-parallel combination is then connected across a 24-V DC power supply. Find the current through R4, in amperes.The currents i and it in the circuit in the figure are 8.0 A and - 4.0 A, respectively. Vis 200 V. (Figure 1) Figure Part A Submit Part B Find ig Express your answer with the appropriate units. Value Va Request Answer 392 P⁹ P10 P30. P16 . Pii n. ps . P4. P15 = 502 m Units Find the power dissipated in each resistor. Enter your answers separated by commas. 15 02 m for Part A for Part Indo for Part redo for Part A reset for Part A keyboard shortcuts for Part A help for Part A 1102 ww TZ vec X for Part B for Part B for Part B for Part B 30 Ω ww 16 02 w 100 40 1 of 1 Vndo for Parts redo for Part B reset for Part B keyboard shortcuts for Part B help for Part B W(a) Identify the type of circuit in Figure 4. Determine its functionalities and find the appropriate mathematical equation. Sig_1 Sig_2 Sig_3+ Sig_4 Iin. Iin. Iin Iin GND www.5 R5 www R4 www R3 ww R2 ww R1 Feedback Resistor ลบ Figure 4 Iout VOUT ◆ BUSEE MORE QUESTIONS